风味
基因组
发酵
醋酸杆菌
生物
米曲霉
细菌
酵母
食品科学
代谢途径
钥匙(锁)
拉伤
基因
微生物种群生物学
乳酸菌
食品加工中的发酵
生物技术
酿酒酵母
工业微生物学
醋酸菌
曲霉
微生物生态学
微生物群
代谢网络
计算生物学
微生物学
生物化学
分离(微生物学)
醋酸
化学
微生物代谢
作者
Cheng‐Hao Jin,Shi-Ru Liu,Wanghui Song,Sui-Kang Yuan,Yong-Zhu Zhang,Peng Wang,Xiao-Tao Sun,Xing-Quan Liu,Guan-Yu Fang
标识
DOI:10.1021/acs.jafc.6c10005
摘要
The spontaneous fermentation of Zhejiang rosy vinegar (ZRV) is driven by environmental microbiota, but the processes underlying its flavor formation remain poorly understood. Using metagenomic sequencing, we investigated microbial community assembly, environmental drivers, and metabolic networks during industrial-scale ZRV fermentation. Acetic acid dominated the final organic acids. Community assembly shifted toward deterministic selection with rising acidity, with a slight rebound of stochastic processes in the late stage (R2 values of 0.442 and 0.346 for bacteria and fungi, respectively). Mantel tests confirmed that environmental factors significantly regulated microbial assembly. Co-occurrence networks grew more complex, with positive interactions accounting for 85.24% (bacteria) and 90.10% (fungi) in the late stage. Key genes (ldh, gapA, pgk) from Acetobacter pasteurianus and Lactobacillus acetotolerans dominated late-stage fermentation, while genes (adhP, SDH) from Aspergillus oryzae and Saccharomyces cerevisiae supported early- and mid-stage fermentation. These findings elucidate microbiota-driven metabolic pathways in ZRV, supporting the fermentation window optimization and industrial vinegar quality standardization.
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